mirror of
https://github.com/mihakralj/QuanTAlib.git
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151 lines
4.7 KiB
C#
151 lines
4.7 KiB
C#
using System.Runtime.CompilerServices;
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namespace QuanTAlib;
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/// <summary>
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/// TSI: True Strength Index
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/// A momentum indicator that shows both trend direction and overbought/oversold conditions
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/// by using two smoothing steps on price changes.
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/// </summary>
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/// <remarks>
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/// The TSI calculation process:
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/// 1. Calculate price change (PC):
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/// PC = Close - Previous Close
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/// 2. Calculate absolute price change (APC):
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/// APC = |PC|
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/// 3. Double smooth both PC and APC using EMA:
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/// First PC EMA = EMA(PC, firstPeriod)
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/// Second PC EMA = EMA(First PC EMA, secondPeriod)
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/// First APC EMA = EMA(APC, firstPeriod)
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/// Second APC EMA = EMA(First APC EMA, secondPeriod)
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/// 4. Calculate TSI:
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/// TSI = (Second PC EMA / Second APC EMA) * 100
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///
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/// Key characteristics:
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/// - Double smoothed momentum indicator
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/// - Oscillates between +100 and -100
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/// - Default periods are 25 and 13
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/// - Shows trend direction
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/// - Identifies overbought/oversold
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///
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/// Formula:
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/// TSI = (EMA(EMA(PC, r), s) / EMA(EMA(|PC|, r), s)) * 100
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/// where:
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/// PC = Close - Previous Close
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/// r = first period (default 25)
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/// s = second period (default 13)
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///
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/// Market Applications:
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/// - Trend direction
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/// - Overbought/Oversold levels
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/// - Centerline crossovers
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/// - Divergence analysis
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/// - Signal line crossovers
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///
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/// Sources:
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/// William Blau - Original development (1991)
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/// https://www.investopedia.com/terms/t/tsi.asp
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///
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/// Note: Values above +25 indicate overbought conditions, while values below -25 indicate oversold conditions
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/// </remarks>
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[SkipLocalsInit]
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public sealed class Tsi : AbstractBase
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{
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private readonly int _firstPeriod;
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private double _prevClose;
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private double _pcFirstEma;
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private double _pcSecondEma;
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private double _apcFirstEma;
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private double _apcSecondEma;
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private readonly double _firstAlpha;
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private readonly double _secondAlpha;
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[MethodImpl(MethodImplOptions.AggressiveInlining)]
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public Tsi(int firstPeriod = 25, int secondPeriod = 13)
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{
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_firstPeriod = firstPeriod;
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WarmupPeriod = firstPeriod + secondPeriod;
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Name = $"TSI({_firstPeriod},{secondPeriod})";
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_firstAlpha = 2.0 / (firstPeriod + 1);
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_secondAlpha = 2.0 / (secondPeriod + 1);
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Init();
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}
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/// <param name="source">The data source object that publishes updates.</param>
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[MethodImpl(MethodImplOptions.AggressiveInlining)]
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public Tsi(object source, int firstPeriod = 25, int secondPeriod = 13) : this(firstPeriod, secondPeriod)
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{
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var pubEvent = source.GetType().GetEvent("Pub");
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pubEvent?.AddEventHandler(source, new BarSignal(Sub));
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}
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[MethodImpl(MethodImplOptions.AggressiveInlining)]
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public override void Init()
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{
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base.Init();
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_prevClose = 0;
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_pcFirstEma = 0;
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_pcSecondEma = 0;
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_apcFirstEma = 0;
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_apcSecondEma = 0;
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}
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[MethodImpl(MethodImplOptions.AggressiveInlining)]
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protected override void ManageState(bool isNew)
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{
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if (isNew)
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{
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_lastValidValue = Value;
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_index++;
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}
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}
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[MethodImpl(MethodImplOptions.AggressiveInlining | MethodImplOptions.AggressiveOptimization)]
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protected override double Calculation()
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{
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ManageState(BarInput.IsNew);
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// Skip first period to establish previous close
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if (_index == 1)
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{
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_prevClose = BarInput.Close;
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return 0;
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}
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// Calculate price changes
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double pc = BarInput.Close - _prevClose;
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double apc = Math.Abs(pc);
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// Initialize or update EMAs
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if (_index <= _firstPeriod)
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{
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_pcFirstEma = pc;
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_apcFirstEma = apc;
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}
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else
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{
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_pcFirstEma = (_firstAlpha * pc) + ((1 - _firstAlpha) * _pcFirstEma);
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_apcFirstEma = (_firstAlpha * apc) + ((1 - _firstAlpha) * _apcFirstEma);
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}
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if (_index <= WarmupPeriod)
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{
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_pcSecondEma = _pcFirstEma;
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_apcSecondEma = _apcFirstEma;
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}
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else
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{
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_pcSecondEma = (_secondAlpha * _pcFirstEma) + ((1 - _secondAlpha) * _pcSecondEma);
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_apcSecondEma = (_secondAlpha * _apcFirstEma) + ((1 - _secondAlpha) * _apcSecondEma);
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}
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// Store current close for next calculation
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_prevClose = BarInput.Close;
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// Calculate TSI
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double tsi = Math.Abs(_apcSecondEma) > double.Epsilon ? (_pcSecondEma / _apcSecondEma) * 100 : 0;
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IsHot = _index >= WarmupPeriod;
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return tsi;
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}
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}
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